Dissecting the loci controlling fetal haemoglobin production on chromosomes 11p and 6q by the regressive approach

JE Craig, J Rochette, CA Fisher, DJ Weatherall… - Nature …, 1996 - nature.com
JE Craig, J Rochette, CA Fisher, DJ Weatherall, S Marc, GM Lathrop, F Demenais, SL Thein
Nature genetics, 1996nature.com
The Changes in the type of haemoglobin (Hb) produced during embryonic, fetal and adult
life, have served as a paradigm for understanding the developmental regulation of human
genes. A genetically determined persistence of fetal Hb synthesis has an ameliorating effect
on β thalassaemia and sickle cell anaemia, globally the commonest single gene disorders.
The search for the putative gene (s) controlling the level of fetal Hb production has been
extremely difficult because this trait may be influenced by several factors. We have studied a …
Abstract
The Changes in the type of haemoglobin (Hb) produced during embryonic, fetal and adult life, have served as a paradigm for understanding the developmental regulation of human genes. A genetically determined persistence of fetal Hb synthesis has an ameliorating effect on β thalassaemia and sickle cell anaemia, globally the commonest single gene disorders. The search for the putative gene(s) controlling the level of fetal Hb production has been extremely difficult because this trait may be influenced by several factors. We have studied a large kindred with hereditary persistence of fetal haemoglobin (HPFH). Using a genetic mapping strategy and statistical methods that account simultaneously for the effects of several genetic factors, we have demonstrated that in addition to the two factors (β thalassaemia and Xmn l-Gγ site) on chromosome 11 p, there is a third major genetic determinant for fetal Hb production localized on chromosome 6q.
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